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Solar-Powered Crystal-Free 802.15.4 Wireless Temperature Sensor

机译:Solar-Powered无晶体802.15.4无线温度传感器

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We demonstrate a wireless temperature sensor consisting of only a chip with an ARM Cortex-M0 and radio, a mm-scale solar panel, and one surface mount capacitor. The radio lacks a crystal reference in favor of other on-chip oscillators to reduce cost and size. Without an absolute time reference, the on-chip oscillators need to be calibrated because their frequencies vary with supply voltage and temperature. An initial optical calibration procedure is used along with temperature-based compensation. This enables the radio to properly transmit standards-compatible IEEE 802.15.4 wireless packets over a temperature range from 35.5 C to 40.0 C. The standard deviation of the temperature estimate error relative to a reference is 0.28 C. The power for all of the components, including the radio and the microprocessor, is supplied by a solar panel on a CMOS chip under 200 mW/cm2 of irradiation.
机译:我们展示了一种由具有ARM Cortex-M0和无线电,MM级太阳能电池板和一个表面安装电容器的芯片组成的无线温度传感器。无线电缺乏晶体参考,有利于其他片上振荡器,以降低成本和尺寸。如果没有绝对的时间参考,需要校准片上振荡器,因为它们的频率随电源电压和温度而变化。初始光学校准程序以及基于温度的补偿使用。这使得无线电能够在35.5c至40.0℃的温度范围内正确地发送标准兼容的IEEE 802.15.4无线数据包。温度估计误差相对于引用的标准偏差为0.28℃。所有组件的电源,包括无线电和微处理器,由太阳能电池板在200mW / cm2的照射下的CMOS芯片上提供。

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